专利 Ø张志恒, 花为,金阳,吕娜伟,刘豪杰, 妙珊, 王培欣. 高可靠自散热静态密封超导发电机与储能一体化装置, CN2026106143533. Ø金阳, 张志恒, 刘豪杰, 吕娜伟, 韩浩迪, 王之军, 郝留成, 张豪. 一种基于分级声梯的电池热失控主动预警装置及方法, CN2026102884404. Ø金阳, 张志恒, 姜欣, 吕娜伟, 宋宇航,王栋梁. 一种基于微磁针阵列的锂电池弱磁成像诊断装置及方法, CN2026102795519. ØWei Hua, Zhiheng Zhang(张志恒), et al. Force-Balancing Magnetic Bearing with Adjustable Bias Magnetic Field for Stator Permanent Magnet Motor, US11909297B2.(美国专利) ØWei Hua, Zhiheng Zhang(张志恒), et al. Magnetic Bearing of Stator Permanent Magnet Motor with Magnetic Pole Bypasses and Bias Force Adjusting Method Thereof, US11536315B2.(美国专利) ØWei Hua, Zhiheng Zhang(张志恒), et al. Stator Structure with Heat Dissipation Module Having Smooth Arc Curved Surface and Condition Bridge in Gap in Heat Dissipation Module, US12418219B2. (美国专利) Ø花为, 张志恒, 等, 偏置磁场可调的力平衡型定子永磁电机磁轴承, ZL202110435872.0.(东南大学高价值专利) Ø花为, 张志恒, 等, 具有磁极旁路的定子永磁电机磁轴承及偏置力调节方法, ZL202110436751.8.(东南大学高价值专利) Ø花为, 张志恒, 等, 磁悬浮磁通切换电机的定子结构, ZL202111371356.2.(东南大学高价值专利) Ø安跃军, 张志恒, 等.一种针对定子绕组偏差的交流电机坐标系修正方法, ZL201810345998.7. Ø花为, 张志恒, 等. 一种超导带材与线圈骨架紧贴型模块化跑道形线圈, ZL202411207372.1. Ø花为, 张志恒, 程明. 一种脉宽调制式函数外形磁极和阻尼线圈组合结构, ZL202210786511.5 Ø花为, 张志恒, 等. 基于一体化冷却结构和模块化磁极的电机强磁部件, CN2023111353735. Ø花为, 张志恒, 等. 一种低转矩脉动和低风摩损耗的定子永磁电机转子结构, CN202210787468.4. Ø花为, 张志恒, 等. 一种结构紧凑型定子励磁低温无刷电机系统, CN202411255442.0. Ø张淦, 张志恒, 花为, 等. 具有楔形永磁体的可变结构磁通切换电机, CN2023102294121. Ø张淦, 张志恒, 花为, 等. 一种机械式气隙磁通连续可调型分区定子电机, CN2023114576237. Ø张淦, 张志恒, 花为, 等. 一种机械式无级调磁定子永磁变形电机, CN2023114577653. Ø王玉彬, 张志恒, 花为, 等. 用于超导磁体特性测试的谐波磁场模拟装置, CN202310579145.0. Ø张志恒, 师勇, 安跃军, 等. 一种用于泵电机定子绕组批量耐压测试的台架, ZL201921901027.2. Ø张志恒, 师勇, 安跃军, 等. 一种定子槽不等深的分段式定子结构及屏蔽电机, ZL201922135005.6. Ø张志恒, 师勇, 安跃军, 等. 一种可降低隔离套损耗的磁力泵磁耦合器, ZL202020097490.2. Ø张志恒, 师胜博, 师勇, 等. 一种用于屏蔽泵的复合结构转子及电机, ZL201921505639.X. Ø张志恒, 师勇, 刘文星, 等. 一种通用泵电机铁心绕线设备, ZL201921505935.X. Ø张志恒, 师勇, 安跃军, 等. 一种用于易干涉加工面的短小细钻头延长装置, ZL201921901912.0. |
代表文章 [1]张志恒, 花为, 李祥林, 等.定子励磁无刷超导电机用短端部高紧凑超导磁体研制与测试[J]. 电工技术学报, 2026, 41(6): 1922-1933. [2]张志恒, 花为, 杨永涛, 等. MW级静态密封低温区定子励磁超导风力发电机设计与多物理场分析[J]. 大电机技术, 2025, (5): 1-8+31. (“现代电机技术研讨会”高质量论文奖) [3]Zhiheng Zhang(张志恒), *Wei Hua, Yubin Wang, et al. Relationship between Slot-Pole Combination and Performance of Partitioned-Stator Field-Excitation Brushless Machines by Air-Gap Field Modulation Principle. IEEE Transactions on Transportation Electrification, 2024, 10(4): 10410-10419. [4]Zhiheng Zhang(张志恒), Peixin Wang, *Wei Hua, et al. Comprehensive Investigation and Evaluation of Cogging Torque Suppression Techniques of Flux-Switching Permanent Magnet Machines. IEEE Transactions on Transportation Electrification, 2023, 9(3): 3894-3907. [5]Zhiheng Zhang(张志恒), *Wei Hua, Peixin Wang, et al. Torque Characteristics of SPM-FS Machines with Functional-Contour Salient Pole Rotors Considering Manufacturing Error. IEEE Transactions on Energy Conversion, 2022, 37(4): 2645-2656. [6]Zhiheng Zhang(张志恒), *Wei Hua, Wenfei Yu, et al. Windage Loss and Torque Ripple Reduction in Stator-permanent Magnet Flux-switching Machines using Quasi-cylindrical Function Contour Rotor. IEEE Transactions on Industry Applications, 2024, 60(2): 3051-3061. [7]Zhiheng Zhang(张志恒), *Wei Hua, Xinkai Zhu, et al. A Comprehensive Comparison of Double-Stator Superconducting Brushless Machines Using Two Typical Field-Excitation Stator Topologies. IEEE Transactions on Industry Applications, 2024, 60(6): 8676-8686. [8]*Zhiheng Zhang(张志恒), Yuejun An, Ming Li, et al.Influence of Asymmetrical Stator Axes on the Performance and Multi-Physical Field of Canned Permanent Magnet Machine for Vacuum Dry Pump with Vector Converter Supply.IEEE Transactions on Energy Conversion, 2020, 35(4): 2129-2140. [9]*花为, 张志恒, 朱新凯, 王玉彬, 李祥林. 基于端部绕组模块的定子励磁无刷电机冷却方法, 东南大学学报(自然科学版), 2024, 54(1): 240-250. (2024年度“优秀论文奖”) [10]Yuejun An, *Zhiheng Zhang(张志恒), Ming Li.Influence of Asymmetrical Stator Axes on the Electromagnetic Field and Driving Characteristics of Canned Induction Motor.IET Electric Power Applications, 2019, 13(8): 1229-1239. [11]安跃军, *张志恒, 张振厚, 等. 真空干泵用屏蔽电机无速度传感器带速重投控制系统.电工技术学报, 2018, 33 (12): 2665-2675. [12]Zhiheng Zhang(张志恒), *Wei Hua, Wenfei Yu, et al. Windage Loss and Torque Ripple Reduction in Stator-permanent Magnet Flux-switching Machines, 2022 IEEE 5th International Electrical and Energy Conference (CIEEC), 2022: 4544-4548. (Best Paper Award) [13]Zhiheng Zhang(张志恒), *Wei Hua, Xinkai Zhu, et al. Comparison of Double-Stator Superconducting Electrical Machine with Two Typical Superconducting Excitation Stator Topologies, 2023 International Conference on Electrical Machines and Systems (ICEMS 2023), Zhuhai, China, 2023: 4621-4626. [14]Zhiheng Zhang(张志恒), *Wei Hua, Yubin Wang, et al. Evaluation of Torque Ripple Suppression Capability of Double-Stator Electrical-Excitation Machines with Shape Optimization in Different Components, 49th Annual Conference of the IEEE Industrial Electronics Society (IECON 2023), Singapore, 2023: 1-6. [15]Yuejun An,*Zhiheng Zhang(张志恒), Guangyu Wang, et al. Control System to Improve Online Running Time of Canned Motor for Vacuum Pump, Chinese Control Conference(CCC2018), Wuhan, China, 2018: 5146-5151. [16]张天翔, 张志恒, 花为, 王培欣, 吴中泽. 低齿槽转矩函数型转子磁通切换电机机理与性能分析[J]. 电工技术学报, 2026, 41(4): 1114-1126. [17]王绍睿, 李祥林, 张志恒, 花为. 超导体及其在超导设备中的失超检测方法综述[J]. 电工技术学报, 2025, 40(16): 5164-5185. [18]Peixin Wang, Jikai Si, Rui Nie, Shuai Xu, Yanqi Wei, Zhiheng Zhang(张志恒). Modeling and Analysis of Two-Degree-of-Freedom Flux-Switching Permanent Magnet Machine Based on 3-D Field Modulation Method. IEEE Transactions on Industrial Electronics, 2026. [19]Peng Hu, Zhongyuan Zhou, Zhiheng Zhang(张志恒), Wei Hua, Xinkai Zhu, Liangliang Liu. Magnetic Shielding Performance Evaluation of Dewar System for High-Temperature Superconducting Machines, IEEE Sensors Journal, 2026, 26 (2): 1891-1900. |